Porous scaffolds based on alginate-polymethacrylate hybrid hydrogels intended for bone and cartilage regeneration were prepared through controlled calcium ions diffusion from an agar mould. The double interconnected network of such materials combines into a single porous structure maintained by both noncovalent crosslinks (calcium ions for alginate) and covalent crosslinks (polymethacrylate crosslinked by the addition of mixtures of mono and bifunctional monomers). The alginate component ensures the appropriate micro-environment to mimic the extra-cellular matrix, whereas the polymethacrylate improves the mechanical performances of the hybrid hydrogels, helping to overcome the mechanical limitations of the alginate component. Morphological ...
Tissue engineering has gained extensive interest as a great potential for regeneration and repair of...
Alginate hydrogels are the most assayed materials for bone tissue engineering (BTE) and bioprinting ...
There is currently a high demand for synthetic biodegradable scaffolds with enhanced osteogenic and ...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Alginate is a typical biomaterial that forms hydrogels in the presence of calcium ions and has often...
Osteoarthritis is a painful degenerative condition that is a common affliction in young and older pe...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
A technique for synthesizing biocompatible hydrogels by cross-linking calcium-form poly(γ-glutamic a...
Alginate/hydroxyapatite composite scaffolds were developed using a novel production design. Hydroxya...
Alginate methacrylate (ALMA) hydrogels have been prevalently used in various biomedical applications...
Alginate methacrylate (ALMA) hydrogels have been prevalently used in various biomedical applications...
[[abstract]]In this paper, a series of alginate/hydroxyapatite (HAP) composite scaffolds were prepar...
Alginate methacrylate (ALMA) hydrogels have been prevalently used in various biomedical applications...
Tissue engineering has gained extensive interest as a great potential for regeneration and repair of...
Alginate hydrogels are the most assayed materials for bone tissue engineering (BTE) and bioprinting ...
There is currently a high demand for synthetic biodegradable scaffolds with enhanced osteogenic and ...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Bone tissue engineering is employed to help enhance regeneration of bone tissue that may have diffic...
Alginate is a typical biomaterial that forms hydrogels in the presence of calcium ions and has often...
Osteoarthritis is a painful degenerative condition that is a common affliction in young and older pe...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
Generation of living tissues through tissue engineering can be achieved via incorporation of cells i...
A technique for synthesizing biocompatible hydrogels by cross-linking calcium-form poly(γ-glutamic a...
Alginate/hydroxyapatite composite scaffolds were developed using a novel production design. Hydroxya...
Alginate methacrylate (ALMA) hydrogels have been prevalently used in various biomedical applications...
Alginate methacrylate (ALMA) hydrogels have been prevalently used in various biomedical applications...
[[abstract]]In this paper, a series of alginate/hydroxyapatite (HAP) composite scaffolds were prepar...
Alginate methacrylate (ALMA) hydrogels have been prevalently used in various biomedical applications...
Tissue engineering has gained extensive interest as a great potential for regeneration and repair of...
Alginate hydrogels are the most assayed materials for bone tissue engineering (BTE) and bioprinting ...
There is currently a high demand for synthetic biodegradable scaffolds with enhanced osteogenic and ...